4 Volt Rating at +85°C (2.7 Volt Rating at +125°C)
T409A225(1)004(2)(3)(4)
CWR09C(3)225(1)(2)(5)
1.0
T409B475(1)004(2)(3)(4)
CWR09C(3)475(1)(2)(5)
1.0
T409C685(1)004(2)(3)(4)
CWR09C(3)685(1)(2)(5)
1.0
T409D106(1)004(2)(3)(4)
CWR09C(3)106(1)(2)(5)
1.0
T409E156(1)004(2)(3)(4)
CWR09C(3)156(1)(2)(5)
1.0
T409F336(1)004(2)(3)(4)
CWR09C(3)336(1)(2)(5)
2.0
T409G686(1)004(2)(3)(4)
CWR09C(3)686(1)(2)(5)
3.0
T409H107(1)004(2)(3)(4)
CWR09C(3)107(1)(2)(5)
4.0
6 Volt Rating at +85°C (4 Volt Rating at +125°C)
T409A155(1)006(2)(3)(4)
CWR09D(3)155(1)(2)(5)
1.0
T409B335(1)006(2)(3)(4)
CWR09D(3)335(1)(2)(5)
1.0
T409C475(1)006(2)(3)(4)
CWR09D(3)475(1)(2)(5)
1.0
T409D685(1)006(2)(3)(4)
CWR09D(3)685(1)(2)(5)
1.0
T409E106(1)006(2)(3)(4)
CWR09D(3)106(1)(2)(5)
1.0
T409F226(1)006(2)(3)(4)
CWR09D(3)226(1)(2)(5)
2.0
T409G476(1)006(2)(3)(4)
CWR09D(3)476(1)(2)(5)
3.0
T409H686(1)006(2)(3)(4)
CWR09D(3)686(1)(2)(5)
4.0
10 Volt Rating at +85°C (7 Volt Rating at +125°C)
T409A105(1)010(2)(3)(4)
CWR09F(3)105(1)(2)(5)
1.0
T409B225(1)010(2)(3)(4)
CWR09F(3)225(1)(2)(5)
1.0
T409C335(1)010(2)(3)(4)
CWR09F(3)335(1)(2)(5)
1.0
T409D475(1)010(2)(3)(4)
CWR09F(3)475(1)(2)(5)
1.0
T409E685(1)010(2)(3)(4)
CWR09F(3)685(1)(2)(5)
1.0
T409F156(1)010(2)(3)(4)
CWR09F(3)156(1)(2)(5)
2.0
T409G336(1)010(2)(3)(4)
CWR09F(3)336(1)(2)(5)
3.0
T409H476(1)010(2)(3)(4)
CWR09F(3)476(1)(2)(5)
5.0
15 Volt Rating at +85°C (10 Volt Rating at +125°C)
T409A684(1)015(2)(3)(4)
CWR09H(3)684(1)(2)(5)
1.0
T409B155(1)015(2)(3)(4)
CWR09H(3)155(1)(2)(5)
1.0
T409C225(1)015(2)(3)(4)
CWR09H(3)225(1)(2)(5)
1.0
T409D335(1)015(2)(3)(4)
CWR09H(3)335(1)(2)(5)
1.0
T409E475(1)015(2)(3)(4)
CWR09H(3)475(1)(2)(5)
1.0
T409F106(1)015(2)(3)(4)
CWR09H(3)106(1)(2)(5)
2.0
T409G226(1)015(2)(3)(4)
CWR09H(3)226(1)(2)(5)
4.0
T409H336(1)015(2)(3)(4)
CWR09H(3)336(1)(2)(5)
5.0
20 Volt Rating at +85°C (13 Volt Rating at +125°C)
T409A474(1)020(2)(3)(4)
CWR09J(3)474(1)(2)(5)
1.0
T409B684(1)020(2)(3)(4)
CWR09J(3)684(1)(2)(5)
1.0
T409B105(1)020(2)(3)(4)
CWR09J(3)105(1)(2)(5)
1.0
T409C155(1)020(2)(3)(4)
CWR09J(3)155(1)(2)(5)
1.0
T409D225(1)020(2)(3)(4)
CWR09J(3)225(1)(2)(5)
1.0
T409E335(1)020(2)(3)(4)
CWR09J(3)335(1)(2)(5)
1.0
T409F685(1)020(2)(3)(4)
CWR09J(3)685(1)(2)(5)
2.0
T409G156(1)020(2)(3)(4)
CWR09J(3)156(1)(2)(5)
3.0
T409H226(1)020(2)(3)(4)
CWR09J(3)226(1)(2)(5)
4.0
25 Volt Rating at +85°C (17 Volt Rating at +125°C)
T409A334(1)025(2)(3)(4)
CWR09K(3)334(1)(2)(5)
1.0
T409B684(1)025(2)(3)(4)
CWR09K(3)684(1)(2)(5)
1.0
T409C105(1)025(2)(3)(4)
CWR09K(3)105(1)(2)(5)
1.0
T409D155(1)025(2)(3)(4)
CWR09K(3)155(1)(2)(5)
1.0
T409E225(1)025(2)(3)(4)
CWR09K(3)225(1)(2)(5)
1.0
T409F475(1)025(2)(3)(4)
CWR09K(3)475(1)(2)(5)
2.0
T409G685(1)025(2)(3)(4)
CWR09K(3)685(1)(2)(5)
2.0
T409G106(1)025(2)(3)(4)
CWR09K(3)106(1)(2)(5)
3.0
T409H156(1)025(2)(3)(4)
CWR09K(3)156(1)(2)(5)
4.0
35 Volt Rating at +85°C (23 Volt Rating at +125°C)
T409A224(1)035(2)(3)(4)
CWR09M(3)224(1)(2)(5)
1.0
T409B474(1)035(2)(3)(4)
CWR09M(3)474(1)(2)(5)
1.0
T409C684(1)035(2)(3)(4)
CWR09M(3)684(1)(2)(5)
1.0
T409D105(1)035(2)(3)(4)
CWR09M(3)105(1)(2)(5)
1.0
T409E155(1)035(2)(3)(4)
CWR09M(3)155(1)(2)(5)
1.0
T409F335(1)035(2)(3)(4)
CWR09M(3)335(1)(2)(5)
1.0
T409G475(1)035(2)(3)(4)
CWR09M(3)475(1)(2)(5)
2.0
T409H685(1)035(2)(3)(4)
CWR09M(3)685(1)(2)(5)
3.0
KEMET
Part Number
Mil-C-55365/4F
Part Number
DF %
@ +25ºC
120 Hz
Max
6.0
6.0
6.0
8.0
8.0
8.0
10.0
10.0
6.0
6.0
6.0
6.0
8.0
8.0
10.0
10.0
6.0
6.0
6.0
6.0
6.0
8.0
10.0
10.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
8.0
8.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
6.0
ESR
Ω
@ +25°C
100 kHz
Max
8.0
8.0
5.5
4.0
3.5
2.2
1.1
0.9
8.0
8.0
5.5
4.5
3.5
2.2
1.1
0.9
10.0
8.0
5.5
4.5
3.5
2.5
1.1
0.9
12.0
8.0
5.5
5.0
4.0
2.5
1.1
0.9
14.0
10.0
12.0
6.0
5.0
4.0
2.4
1.1
0.9
15.0
7.5
6.5
6.5
3.5
2.5
1.2
1.4
1.0
18.0
10.0
8.0
6.5
4.5
2.5
1.5
1.3
A
B
C
D
E
F
G
H
A
B
C
D
E
F
G
H
A
B
C
D
E
F
G
H
A
B
C
D
E
F
G
H
A
B
B
C
D
E
F
G
H
A
B
C
D
E
F
G
G
H
A
B
C
D
E
F
G
H
(
1) To complete KEMET/CWR part number, insert K = ±10%; M = ±20% and J = ±5% Capacitance tolerance.
(2) To complete KEMET/CWR part number, insert A = Non-ER; Weibull: B = 0.1%/1000 Hrs.; C = 0.01%/1000 Hrs or D = 0.001%/1000 Hrs. or
Exponential: M = 1.0%/1000 hrs., P = 0.1%/1000 hrs., R = 0.01%/1000 hrs. or S = 0.001%/1000 hrs. Reliability Level.
(3) To complete KEMET part number, insert B = Gold plated; C = Hot solder dipped; H = Solder plated or K = Solder Fused Termination Finish.
(4) To complete KEMET part number, insert 4250 = +25°C after Weibull; 4251 = -55° + 85°C after Weibull; or 4252 = -55, & +85°C before Weibull Surge Current Option.
(5) To complete CWR part number, insert A = +25°C after Weibull; B = -55° + 85°C after Weibull; or C = -55, & +85°C before Weibull Surge Current Option.
The first article on setting up the software environment - e2studio cannot debug the YRPBRL78G14_e2studio_Debugging_Project. This is the first time I use a Renesas board. The first thing to do is to s...
The USB camera driver in Zhang Fan's book cannot be compiled. Does anyone have the source (which can be compiled and used)? Please send it to my email address aaron9126@gmail.com. Thanks for you!!!...
It is to define an address variable, with an address as the starting address and then increase the address as the stored data increases. When it is used next time, it cannot start from the starting ad...
Recently, I saw some people asking questions about DDS in this forum, which is to use FPGA to generate a series of waveforms such as sine wave, square wave, triangle wave, etc. They asked, and I asked...
While
the solid-state battery
industry is still engaged in a long technological marathon for
the "ultimate solution" for
electric vehicles
, some companies have begun looking for mor...[Details]
1. Equipment Overview
Shell-and-tube heat exchangers are a common heat exchange device used in chemical evaporation and heating equipment. Currently, the tubesheets of shell-and-tube heat exch...[Details]
Abstract:
With the increasing complexity of smart vehicle electrical and electronic architectures, the full lifecycle management of vehicle electronic control components faces multiple challe...[Details]
Since its invention in the mid-1940s, the microwave oven has evolved from a humble beginning to commercial use, entering homes in the 1960s and rapidly gaining popularity. Its basic functionality a...[Details]
introduction
According to the China Fire Statistics Yearbook, electrical fires accounted for more than 30% of fire accidents in the past decade, and the trend is increasing year by year. They ...[Details]
With the continuous development of the industrial automation industry, we are seeing an increasing number of intelligent devices using flexible, efficient, and precise robotic arms to p...[Details]
1. Fault phenomenon and cause analysis
1. During the operation of the equipment, the expansion sleeve is subjected to a large torque, and the mating surfaces of the shaft and the sleeve move...[Details]
My career has been closely tied to the semiconductor industry. From product management to content marketing, I've provided countless forecasts and predictions across a variety of roles. Whethe...[Details]
In the field of communications power supplies, AC/DC rectifier power supplies are called primary power supplies or basic power supplies, while DC/DC converters are called secondary power supplies. ...[Details]
There are many motors that can use thyristor speed control, and they can be used in almost all industries. Various types of motors, such as fans, pumps, AC motors, DC motors, torque motors, single-...[Details]
With growing environmental awareness, the continuous improvement of three-electric technology and the increasing deployment of infrastructure such as charging stations, the electrification of new e...[Details]
From time to time, I see some audiophiles spending a lot of money or a lot of time to DIY speakers, but the results are not what they want. Below I list some of the small experiences I summarized b...[Details]
Smartphones can be incredibly unintelligent. For example, consider an office full of people, each absorbed in their work. Suddenly, the silence is broken by a burst of loud pop music. A colleague's...[Details]
01. Introduction
As in-vehicle networks migrate from the CAN
bus
to
Ethernet
, traditional millisecond-level synchronization accuracy can no longer meet the requirements of mul...[Details]
introduction
With the development and widespread use of integrated circuits in power electronics design, electronic products are trending towards smaller sizes, more components, and greater fu...[Details]